Seamless copper alloy pipe with excellent anti-corrosion performance for heat exchanger and preparation method thereof
A technology for heat exchangers and copper alloys, applied in the field of seamless copper alloy tubes and their preparation, can solve problems such as reduced corrosion resistance and leakage of cooling media
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Embodiment 1
[0015] The raw materials 350kg cathode copper, 140kg zinc ingot, 5.5kg tin ingot, 0.68kg arsenic copper alloy (CuAs30) and 1kg electrolytic nickel are used in a cored power frequency induction furnace (divided into copper melting furnace and holding furnace) according to a certain feeding sequence ( Copper+nickel→melting→adding tin+zinc→arsenic copper alloy) sequentially add copper melting furnace to melt into copper liquid alloy, melting temperature: 1090℃, when the material is completely melted, the temperature reaches 1100~1160℃, then move the copper alloy liquid into Holding furnace, holding temperature: 1150-1170°C, add 1.7kg of manganese-copper alloy (CuMn30) to the above-mentioned copper alloy liquid for deoxidation to obtain a low-oxygen copper alloy liquid, and then add 2.7kg of copper to the low-oxygen copper alloy liquid The boron alloy (CuB5) is made into the molten copper alloy liquid of the present invention, and then the copper alloy hollow casting slab is pulled...
Embodiment 2
[0017] Use 351kg of cathode copper, 141kg of zinc ingot, 5.6kg of tin ingot, 0.67kg of arsenic copper alloy (CuAs30), and 1.2kg of electrolytic nickel in a cored power frequency induction furnace (divided into copper melting furnace and holding furnace) according to a certain feeding sequence (copper+nickel→melting→adding tin+zinc→arsenic-copper alloy) sequentially add into the copper melting furnace to melt into molten copper alloy (melting temperature: 1090°C), and wait for the material to completely melt and reach a certain temperature (1100~1160°C), Move the copper alloy solution into the holding furnace (holding temperature: 1150-1170°C), add 1.65kg of manganese-copper alloy (CuMn30) to the above-mentioned copper alloy solution for deoxidation to obtain a low-oxygen copper alloy solution, and then in this low-oxygen copper alloy solution The copper-boron alloy (CuB5) that adds 2.8kg is made into the molten copper alloy liquid of the present invention, draws out the copper ...
Embodiment 3
[0019] The raw materials 349kg cathode copper, 141kg zinc ingot, 5.4kg tin ingot, 0.67kg arsenic copper alloy (CuAs30), 1.1kg electrolytic nickel are used in a cored power frequency induction furnace (divided into copper melting furnace and holding furnace) according to a certain feeding sequence (copper+nickel→melting→adding tin+zinc→arsenic-copper alloy) sequentially add into the copper melting furnace to melt into molten copper alloy (melting temperature: 1090°C), and wait for the material to completely melt and reach a certain temperature (1100~1160°C), Move the copper alloy solution into the holding furnace (holding temperature: 1150-1170°C), add 1.8kg of manganese-copper alloy (CuMn30) to the above-mentioned copper alloy solution for deoxidation to obtain a low-oxygen copper alloy solution, and then in this low-oxygen copper alloy solution The copper-boron alloy (CuB5) that adds 2.8kg is made into the molten copper alloy liquid of the present invention, draws out the copp...
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